绵羊血浆中一种新型可溶性核苷酸磷酸水解酶在血小板反应性抑制中的作用:止血、血栓形成和血管生物学。

A. Birk, Darya Bubman, M. Broekman, H. Robertson, J. Drosopoulos, A. Marcus, H. Szeto
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引用次数: 40

摘要

代谢细胞外二磷酸腺苷(ADP)的外泌酶和外泌酶是血小板活化和募集的主要启动子,它们具有潜在的临床重要性,因为它们可以代谢防止血栓过度生长。在内皮细胞上发现了一种外泌adpase (CD39, NTPDase1)。我们证明了ADP和三磷酸腺苷(ATP)在pH为7.4的绵羊血浆中迅速代谢为一磷酸腺苷(AMP)。这种水解对P(1), P(5)-二-(腺苷-5')五磷酸(Ap(5)A)和乙二醇双(β -氨基乙醚)- N, N, N(-), N(-)四乙酸酯(EGTA)敏感,但对四唑(一种碱性磷酸酶抑制剂)不敏感。一种特殊的磷酸二酯酶底物对硝基苯酚-5′-胸苷单磷酸(p -Nph-5′-TMP)在绵羊血浆中以大约0.25 nmol/min/mg蛋白的速率容易水解,这种水解被ADP、ATP和Ap(5)A抑制。此外,200倍纯化的p -Nph-5'- tmp水解活性还能将ATP和ADP直接水解为AMP。当ADP在血浆中预孵育时,其诱导血小板聚集的能力以时间依赖性的方式受到抑制。这种效应被Ap(5)A所消除。对血小板聚集的抑制作用与血浆中ADP的水解有关。这些数据表明内源性可溶性血浆磷酸水解酶通过裂解核苷5'-磷酸衍生物的α - β -磷酸二酯键来代谢ATP和ADP。这种新的生化活性通过水解活化血小板在(病理)生理过程中释放的细胞外核苷酸来抑制血小板反应性,在体内具有稳态和抗血栓功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of a novel soluble nucleotide phospho-hydrolase from sheep plasma in inhibition of platelet reactivity: hemostasis, thrombosis, and vascular biology.
Ecto- and exoenzymes that metabolize extracellular adenosine diphosphate (ADP), the major promoter of platelet activation and recruitment, are of potential clinical importance because they can metabolically prevent excessive thrombus growth. An ecto-ADPase (CD39, NTPDase1) has been identified on endothelial cells. We demonstrate that ADP and adenosine triphosphate (ATP) are rapidly metabolized to adenosine monophosphate (AMP) in sheep plasma at pH 7.4. This hydrolysis is sensitive to P(1), P(5)-di-(adenosine-5') pentaphosphate (Ap(5)A), and ethylene glycol bis (beta-aminoethyl ether) - N, N, N(-), N(-) tetra-acetate (EGTA) but insensitive to tetramisole (an alkaline phosphatase inhibitor). A specific phosphodiesterase substrate, p -nitrophenol-5'-thymidine monophosphate (TMP) (p -Nph-5'-TMP), was readily hydrolyzed in sheep plasma at a rate of approximately 0.25 nmol/min/mg protein, and this hydrolysis was inhibited by ADP, ATP, and Ap(5)A. Furthermore, 200-fold purified p -Nph-5'-TMP-hydrolyzing activity also hydrolyzed ATP and ADP directly to AMP. When ADP was preincubated in plasma, its ability to induce platelet aggregation was inhibited in a time-dependent manner. This effect was abolished by Ap(5)A. The inhibitory effects on platelet aggregation correlated with hydrolysis of the ADP in plasma. These data suggest that the endogenous soluble plasma phosphohydrolase metabolizes ATP and ADP by means of cleavage of the alpha-beta-phosphodiester bond of nucleoside 5'-phosphate derivatives. This novel biochemical activity inhibits platelet reactivity through hydrolysis of extracellular nucleotides released by activated platelets during (patho)physiological processes, serving a homeostatic and antithrombotic function in vivo.
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